Modification of Chitosan-Chitosan Phtalate Anhydrides Matrices

L. Atmaja, Herianus Manimoy, L. E. Arizka
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Abstract

Chitin and chitosan are natural biopolymers on shrimp shells. Chitosan is used extensively as a raw material in various industries. The study aimed to extract chitin and chitosan from fanami shrimp skin through deproteinization, demineralization, and deastilation reactions and to modify the matrix to improve the physical properties. The results of the analysis of the FTIR chitin spectrum shows several major peaks at wave number 3446.91 cm which showed the vibrations of bending secondary amide and amine (NH) secondary amides at 1654.98 cm indicating the presence of vibration stretching CH. The results of the chitosan FTIR spectrum analysis shows symmetrical stretching vibrations at 3433.41 cm due to overlapping OH and amines (NH), stretching vibrations of 1653.05 cm caused by the propagation of C = O stretching and stretching vibrations of 1587.47 cm indicating secondary amide. The results of the characterization with XRD shows that extracted compounds were chitin and chitosan. In modifying the chitosan matrix, the spectra result show peak at 1656.91 1564.32 cm indicating the presence of an amide group. New aromatic group peak found in the area of 1631.83 cm which not found in chitosan. Diffract gram XRD from pure chitosan shows three highest peak peaks at 2θ equal to 609.2; 609.88 and 550 while chitosan-anhydrous modification shows a peak at 2θ equal to 609.8. The addition of anhydrous phthalates to chitosan has reduced its crystallinity which results in an increase in the hydrophilic characteristics of the membrane. The results of this study are expected to be one of the references in further research regarding the manufacture of phthalate chitosan-anhydrous based composite membranes for DMFC applications. KeywordsChitin, Chitosan, Phthalic Anhydride.
壳聚糖-壳聚糖邻苯二酸酐基质的改性研究
几丁质和壳聚糖是虾壳上的天然生物聚合物。壳聚糖作为原料广泛应用于各个工业领域。本研究旨在通过脱蛋白、脱矿、脱腐等反应从虾皮中提取甲壳素和壳聚糖,并对基质进行改性以改善其物理性能。壳聚糖的FTIR光谱分析结果显示,在3446.91 cm处有几个主要的波数峰,表明在1654.98 cm处有弯曲的仲酰胺和胺(NH)仲酰胺的振动,表明振动拉伸CH的存在。壳聚糖的FTIR光谱分析结果显示,在3433.41 cm处,由于OH和胺(NH)重叠而产生对称的拉伸振动。由C = O拉伸传播引起的1653.05 cm的拉伸振动和1587.47 cm的拉伸振动表明次生酰胺。XRD表征结果表明,提取的化合物为几丁质和壳聚糖。对壳聚糖基体进行修饰后,光谱结果显示在1656.91 ~ 1564.32 cm处出现了一个酰胺基团。在1631.83 cm的面积上发现了壳聚糖中未发现的新的芳香基团峰。纯壳聚糖的衍射图XRD在2θ = 609.2处显示出三个峰值;而壳聚糖无水改性在2θ = 609.8处达到峰值。在壳聚糖中加入无水邻苯二甲酸盐降低了壳聚糖的结晶度,从而提高了膜的亲水性。本研究结果可为进一步研究邻苯二甲酸酯壳聚糖-无水复合膜的制备提供参考。几丁质;壳聚糖;邻苯二酸酐;
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